Chen Yi, Xu Xiaoyu, Lin Ziqi, Li Maoyuan, Bi Guo, Wang Zhenzhong
School of Aerospace Engineering, Xiamen University, Xiamen 361005, China.
Sichuan Institute of Xiamen University, Chengdu 610213, China.
Micromachines (Basel). 2025 Jul 30;16(8):891. doi: 10.3390/mi16080891.
The hydrostatic guideway has been widely used in ultra-precision machine tools. The flow stability of the hydrostatic guideway has a significant impact on its bearing characteristics, and the flow controller is critical to safeguard the flow stability of the hydrostatic guideway. Currently, most engineering applications use fixed, fluid-resistance flow controllers, which have a simple structure, low cost, and high reliability. However, when facing complex working conditions, the fixed, fluid-resistance flow controller cannot maintain the flow stability of the hydrostatic guide. In this study, a membrane-type flow controller with variable fluid resistance is designed, and a theoretical model of the flow controller's bearing characteristics is established, which is verified by fluid-solid coupling simulation and flow rate experiments. Analyzing the influence of the design parameters of the membrane-type flow controller on the performance according to the theoretical model, the design guidelines of the membrane-type flow controller are established, the key structure of the flow controller is clarified, and the design range of the key structure dimensions is given. The results show that the gasket thickness of the membrane-type flow controller has the greatest impact on the performance of the hydrostatic guideways, which should be ensured to have a machining error of less than 0.005 mm. This study is a guide for the design and manufacture of flow controllers, as well as for engineering applications.
液体静压导轨已在超精密机床中得到广泛应用。液体静压导轨的流量稳定性对其承载特性有重大影响,而流量控制器对于保障液体静压导轨的流量稳定性至关重要。目前,大多数工程应用采用固定节流式流量控制器,其结构简单、成本低且可靠性高。然而,在面对复杂工况时,固定节流式流量控制器无法维持液体静压导轨的流量稳定性。在本研究中,设计了一种可变节流式膜片流量控制器,并建立了该流量控制器承载特性的理论模型,通过流固耦合仿真和流量实验对其进行了验证。依据理论模型分析了膜片流量控制器设计参数对性能的影响,确立了膜片流量控制器的设计准则,明确了流量控制器的关键结构,并给出了关键结构尺寸的设计范围。结果表明,膜片流量控制器的垫片厚度对液体静压导轨性能的影响最大,应确保其加工误差小于0.005毫米。本研究为流量控制器的设计制造以及工程应用提供了指导。